Study of Isothermal Compressibility and Speed of Sound in the Hadronic Matter Formed in Heavy-Ion Collision using Unified Formalism
arXiv:2103.15117 · doi:10.3390/universe9040170
Abstract
The thermodynamical quantities and response functions are useful to describe the particle production in heavy-ion collisions as they reveal crucial information about the produced system. While the study of isothermal compressibility provides an inference about the viscosity of the medium, speed of sound helps in understanding the equation of state. With an aim towards understanding the system produced in the heavy-ion collision, we have made an attempt to study isothermal compressibility and speed of sound as function of charged particle multiplicity in heavy-ion collisions at = TeV, TeV, and TeV using unified formalism.
References in corpus (10)
- Viscosity in Strongly Interacting Quantum Field Theories from Black Hole Physics
- Freeze-out radii extracted from three-pion cumulants in pp, p-Pb and Pb-Pb collisions at the LHC
- Possible Implication of a Single Nonextensive Distribution for Hadron Production in High-Energy Collisions
- Effects of initial state fluctuations on the mean transverse momentum
- Multiplicity Dependence of Shear Viscosity, Isothermal Compressibility and Speed of Sound in collisions at = 7 TeV
- Model comparison of the transverse momentum spectra of charged hadrons produced in collision at TeV
- Possible Formation of a Perfect Fluid in , -Pb, Xe-Xe and Pb-Pb Collisions at the Large Hadron Collider Energies: A Color String Percolation Approach
- Deciphering QCD dynamics in small collision systems using event shape and final state multiplicity at the Large Hadron Collider
- The theoretical description of the transverse momentum spectra: a unified model
- A unified formalism to study the pseudorapidity spectra in heavy-ion collision